Battery-Boosting Devices

This New Radio Technology Can Significantly Extend Battery Life

A group of scientists and engineers working out of the University of Massachusetts Amherst have developed an extraordinary new radio technology that is designed to make it easier than ever to extend battery life of mobile devices to spectacular levels. The technology essentially works by allowing devices to share their battery power with other devices.

The technology, which is dubbed 'Braidio' or 'braid of radios', ensures that paired devices make use of regular battery energy levels except when juice is running low, at which point the smaller device begins outsourcing energy consumption to the device fitted with a bigger battery.

This groundbreaking invention could have a real impact on the design of technological gadgets going forward, with the ability to share and outsource energy having the potential to make smaller and lighter devices a real possibility.
Trend Themes
1. Battery-sharing Technology - Developing battery-sharing technology allows devices to extend battery life and create opportunities for innovative mobile experiences
2. Outsourced Energy Consumption - Outsourcing energy consumption between devices opens doors for smaller, lighter, and more efficient gadgets
3. Designing Lighter Devices - The potential to share and outsource energy consumption enables the development of smaller and lighter technological gadgets
Industry Implications
1. Mobile Technology - The development of battery-sharing technology in mobile devices has the potential to revolutionize the industry and create new opportunities for innovative experiences
2. Energy Storage - The concept of outsourcing energy consumption between devices can drive innovation in energy storage solutions for more efficient and sustainable power management
3. Consumer Electronics - The ability to extend battery life through shared energy consumption opens up possibilities for designing more power-efficient consumer electronic devices

Related Ideas

Similar Ideas
VIEW FULL ARTICLE & IMAGES